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Mutations in Either TUBB or MAPRE2 Cause Circumferential Skin Creases Kunze Type

机译:TUBB或MAPRE2中的突变都会引起皮肤周向折皱Kunze类型

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摘要

Circumferential skin creases Kunze type (CSC-KT) is a specific congenital entity with an unknown genetic cause. The disease phenotype comprises characteristic circumferential skin creases accompanied by intellectual disability, a cleft palate, short stature, and dysmorphic features. Here, we report that mutations in either MAPRE2 or TUBB underlie the genetic origin of this syndrome. MAPRE2 encodes a member of the microtubule end-binding family of proteins that bind to the guanosine triphosphate cap at growing microtubule plus ends, and TUBB encodes a β-tubulin isotype that is expressed abundantly in the developing brain. Functional analyses of the TUBB mutants show multiple defects in the chaperone-dependent tubulin heterodimer folding and assembly pathway that leads to a compromised yield of native heterodimers. The TUBB mutations also have an impact on microtubule dynamics. For MAPRE2, we show that the mutations result in enhanced MAPRE2 binding to microtubules, implying an increased dwell time at microtubule plus ends. Further, in vivo analysis of MAPRE2 mutations in a zebrafish model of craniofacial development shows that the variants most likely perturb the patterning of branchial arches, either through excessive activity (under a recessive paradigm) or through haploinsufficiency (dominant de novo paradigm). Taken together, our data add CSC-KT to the growing list of tubulinopathies and highlight how multiple inheritance paradigms can affect dosage-sensitive biological systems so as to result in the same clinical defect.
机译:皮肤周向折痕Kunze型(CSC-KT)是特定的先天性实体,遗传原因未知。该疾病表型包括特征性周围皮肤皱纹,伴有智力残疾,pa裂,身材矮小和畸形。在这里,我们报告MAPRE2或TUBB中的突变是该综合征的遗传起源的基础。 MAPRE2编码微管末端结合蛋白家族的成员,该蛋白在生长的微管正端与鸟苷三磷酸鸟嘌呤帽结合,TUBB编码在发育中的大脑中大量表达的β-微管蛋白同种型。 TUBB突变体的功能分析表明,伴侣依赖性微管蛋白异二聚体折叠和组装途径中存在多个缺陷,导致天然异二聚体产量下降。 TUBB突变也对微管动力学有影响。对于MAPRE2,我们显示该突变导致MAPRE2与微管的结合增强,这意味着在微管末端的停留时间增加。此外,在颅面发育的斑马鱼模型中的MAPRE2突变的体内分析显示,这些变体最有可能通过过度活动(在隐性范式下)或通过单倍体功能不足(主要是从头范式)扰乱了arch弓的形成。综上所述,我们的数据将CSC-KT添加到了越来越多的肾小管病变中,并强调了多重继承范例如何影响剂量敏感的生物系统,从而导致相同的临床缺陷。

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